Takefushi Naoya, Yoshida Masato, Kasai Keisuke, Hirooka Toshihiko, Nakazawa Masataka
Opt Express. 2020 Feb 3;28(3):2873-2883. doi: 10.1364/OE.384505.
We describe the fiber structural dependence of guided acoustic-wave Brillouin scattering (GAWBS) phase noise in a digital coherent optical fiber transmission. We present theoretical and experimental analyses of GAWBS phase noise spectra in three types of optical fibers and show that the GAWBS resonant modes are distributed over a wider bandwidth as the effective core area of the fiber becomes smaller. We also use a vector signal analysis to show phase fluctuations caused by GAWBS. On the basis of these analyses, we show that the GAWBS phase noise fluctuation has a Gaussian distribution, which is used to evaluate its influence on the BER characteristics in a coherent QAM transmission. As a result, we found that the error-free transmission distance in SSMF is limited to 4600, 1200, and 340 km with 64, 256, and 1024 QAM, respectively, assuming a hard-decision FEC with a 7% overhead. These results provide useful insights into the influence of GAWBS on digital coherent transmission.
我们描述了数字相干光纤传输中导波声波布里渊散射(GAWBS)相位噪声的光纤结构依赖性。我们对三种类型光纤中的GAWBS相位噪声谱进行了理论和实验分析,结果表明,随着光纤有效纤芯面积变小,GAWBS谐振模式分布在更宽的带宽上。我们还使用矢量信号分析来展示由GAWBS引起的相位波动。基于这些分析,我们表明GAWBS相位噪声波动具有高斯分布,该分布用于评估其在相干QAM传输中对误码率特性的影响。结果,我们发现,假设硬判决前向纠错开销为7%,在单模光纤(SSMF)中,采用64、256和1024 QAM时无误码传输距离分别限制为4600、1200和340 km。这些结果为GAWBS对数字相干传输的影响提供了有用的见解。